Cardiotoxicity in signal transduction therapeutics: erbB2 antibodies and the heart

J W Schneider1, A Y Chang, T P Rocco

  • 1Division of Cardiology, Department of Medicine, VA Boston Healthcare System and Harvard Medical School, West Roxbury, MA 02132, USA.

Seminars in Oncology
|November 14, 2001
PubMed

Insights

Anticancer drug trastuzumab can directly harm heart cells (cardiomyocytes), causing cardiotoxicity. This damage may be reversed by neuregulins, suggesting new therapeutic strategies for cancer patients.

Area of Science:

  • Cardiology
  • Oncology
  • Pharmacology

Background:

  • Antineoplastic drug therapy can cause cardiotoxicity, a paradoxical effect in terminally differentiated cardiomyocytes.
  • Trastuzumab, an erbB2 receptor antibody used in breast cancer treatment, is linked to cardiac pump failure when combined with anthracyclines.
  • The erbB2 receptor tyrosine kinase plays a role in cardiac development and cardiomyocyte survival, but its levels are low in adult hearts.

Purpose of the Study:

  • To investigate the direct effects of trastuzumab on human cardiomyocytes.
  • To elucidate the molecular mechanisms underlying trastuzumab-associated cardiotoxicity.
  • To explore potential therapeutic interventions for drug-induced cardiotoxicity.

Main Methods:

  • Developed a novel in vitro system for culturing human myocardium.
  • Confirmed trastuzumab induces tyrosine phosphorylation of human cardiomyocyte erbB2.
  • Studied the effects of trastuzumab on human cardiomyocytes in vitro.

Main Results:

  • Trastuzumab induced structural and functional changes in human cardiomyocytes.
  • These trastuzumab-induced effects were partially reversible with recombinant neuregulins.
  • Data support a direct action of trastuzumab on cardiomyocytes.

Conclusions:

  • Trastuzumab can directly impact human cardiomyocytes, leading to cardiotoxicity.
  • Neuregulins may offer a protective or reversible effect against trastuzumab-induced cardiac damage.
  • Highlights the cardiotoxicity risks associated with signal transduction-interfering antineoplastic drugs.

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